JP4760287B2 - Exhaust device for internal combustion engine - Google Patents

Exhaust device for internal combustion engine Download PDF

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Publication number
JP4760287B2
JP4760287B2 JP2005298254A JP2005298254A JP4760287B2 JP 4760287 B2 JP4760287 B2 JP 4760287B2 JP 2005298254 A JP2005298254 A JP 2005298254A JP 2005298254 A JP2005298254 A JP 2005298254A JP 4760287 B2 JP4760287 B2 JP 4760287B2
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Prior art keywords
partition plate
exhaust
exhaust pipe
internal combustion
combustion engine
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JP2007107439A (en
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孝史 斉藤
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Nissan Motor Co Ltd
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Nissan Motor Co Ltd
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Priority to JP2005298254A priority Critical patent/JP4760287B2/en
Priority to US11/580,255 priority patent/US7503171B2/en
Priority to EP06255280A priority patent/EP1775436B1/en
Priority to CNB2006101405161A priority patent/CN100467838C/en
Priority to DE602006004669T priority patent/DE602006004669D1/en
Publication of JP2007107439A publication Critical patent/JP2007107439A/en
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Publication of JP4760287B2 publication Critical patent/JP4760287B2/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01NGAS-FLOW SILENCERS OR EXHAUST APPARATUS FOR MACHINES OR ENGINES IN GENERAL; GAS-FLOW SILENCERS OR EXHAUST APPARATUS FOR INTERNAL COMBUSTION ENGINES
    • F01N13/00Exhaust or silencing apparatus characterised by constructional features ; Exhaust or silencing apparatus, or parts thereof, having pertinent characteristics not provided for in, or of interest apart from, groups F01N1/00 - F01N5/00, F01N9/00, F01N11/00
    • F01N13/08Other arrangements or adaptations of exhaust conduits
    • F01N13/10Other arrangements or adaptations of exhaust conduits of exhaust manifolds
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01NGAS-FLOW SILENCERS OR EXHAUST APPARATUS FOR MACHINES OR ENGINES IN GENERAL; GAS-FLOW SILENCERS OR EXHAUST APPARATUS FOR INTERNAL COMBUSTION ENGINES
    • F01N13/00Exhaust or silencing apparatus characterised by constructional features ; Exhaust or silencing apparatus, or parts thereof, having pertinent characteristics not provided for in, or of interest apart from, groups F01N1/00 - F01N5/00, F01N9/00, F01N11/00
    • F01N13/08Other arrangements or adaptations of exhaust conduits
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01NGAS-FLOW SILENCERS OR EXHAUST APPARATUS FOR MACHINES OR ENGINES IN GENERAL; GAS-FLOW SILENCERS OR EXHAUST APPARATUS FOR INTERNAL COMBUSTION ENGINES
    • F01N13/00Exhaust or silencing apparatus characterised by constructional features ; Exhaust or silencing apparatus, or parts thereof, having pertinent characteristics not provided for in, or of interest apart from, groups F01N1/00 - F01N5/00, F01N9/00, F01N11/00
    • F01N13/18Construction facilitating manufacture, assembly, or disassembly
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01NGAS-FLOW SILENCERS OR EXHAUST APPARATUS FOR MACHINES OR ENGINES IN GENERAL; GAS-FLOW SILENCERS OR EXHAUST APPARATUS FOR INTERNAL COMBUSTION ENGINES
    • F01N2240/00Combination or association of two or more different exhaust treating devices, or of at least one such device with an auxiliary device, not covered by indexing codes F01N2230/00 or F01N2250/00, one of the devices being
    • F01N2240/20Combination or association of two or more different exhaust treating devices, or of at least one such device with an auxiliary device, not covered by indexing codes F01N2230/00 or F01N2250/00, one of the devices being a flow director or deflector
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01NGAS-FLOW SILENCERS OR EXHAUST APPARATUS FOR MACHINES OR ENGINES IN GENERAL; GAS-FLOW SILENCERS OR EXHAUST APPARATUS FOR INTERNAL COMBUSTION ENGINES
    • F01N2260/00Exhaust treating devices having provisions not otherwise provided for
    • F01N2260/18Exhaust treating devices having provisions not otherwise provided for for improving rigidity, e.g. by wings, ribs

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Exhaust Silencers (AREA)

Description

この発明は、多気筒内燃機関における排気干渉を回避するために集合部排気管内に仕切り板を設けた内燃機関の排気装置の改良に関する。   The present invention relates to an improvement in an exhaust system of an internal combustion engine in which a partition plate is provided in a collecting portion exhaust pipe in order to avoid exhaust interference in a multi-cylinder internal combustion engine.

例えば特許文献1に開示されているように、集合部排気管の入口に気筒毎の複数の上流側排気管を接続してなる排気装置において、集合部排気管内部での排気干渉を回避するために、集合部排気管内に径方向に沿った仕切り板を設けた構成が従来から知られている。例えば直列4気筒内燃機関では、集合部排気管内を仕切り板によって2つの領域に区画し、一方の領域に♯1,♯4気筒の上流側排気管を接続し、他方の領域に♯2,♯3気筒の上流側排気管を接続することで、いわゆる「4−2−1」の形で集合する排気系を実現するようにしている。
特許第3405857号公報
For example, as disclosed in Patent Document 1, in an exhaust system in which a plurality of upstream exhaust pipes for each cylinder are connected to an inlet of a collective section exhaust pipe, in order to avoid exhaust interference inside the collective section exhaust pipe In addition, a configuration in which a partition plate along the radial direction is provided in the collecting portion exhaust pipe has been conventionally known. For example, in an in-line four-cylinder internal combustion engine, a collecting portion exhaust pipe is partitioned into two regions by a partition plate, the upstream exhaust pipes of # 1 and # 4 cylinders are connected to one region, and # 2, # are connected to the other region. By connecting the exhaust pipes on the upstream side of the three cylinders, an exhaust system that collects in a so-called “4-2-1” form is realized.
Japanese Patent No. 3405857

上記のような集合部排気管内の仕切り板は、一般に、上流側端部は上流側排気管とともに固定支持されるものの、下流側端部は集合部排気管内で自由端となるため、振動しやすく、異音発生の一因となる。特に、特許文献1の図8には、仕切り板の幅方向の熱膨張・熱収縮を吸収するために、幅方向中央部に仕切り板の長手方向に沿った折り曲げ部を設けた構成が開示されているが、このような構成では、仕切り板の剛性が低くなって、さらに振動しやすくなる。   The partition plate in the collecting section exhaust pipe as described above is generally fixed and supported at the upstream end together with the upstream exhaust pipe, but the downstream end becomes a free end in the collecting section exhaust pipe, so that it easily vibrates. Contributes to the generation of abnormal noise. In particular, FIG. 8 of Patent Document 1 discloses a configuration in which a bent portion along the longitudinal direction of the partition plate is provided at the center portion in the width direction in order to absorb thermal expansion and thermal contraction in the width direction of the partition plate. However, in such a configuration, the rigidity of the partition plate is lowered, and the vibration is further facilitated.

この発明は、湾曲した集合部排気管の入口に複数の上流側排気管が接続されるとともに、この集合部排気管の内部に、排気干渉を回避するように流路を区画する仕切り板を、該集合部排気管の湾曲形状に沿って配置してなる内燃機関の排気装置において、上記仕切り板に、流れに直交する方向に沿って延びた補強用の突条部を備えるとともに、この突条部が、該仕切り板の湾曲の外側に突出していることを特徴としている。   In the present invention, a plurality of upstream exhaust pipes are connected to the inlet of the curved collecting portion exhaust pipe, and a partition plate that divides the flow path so as to avoid exhaust interference is formed inside the collecting portion exhaust pipe. In the exhaust device for an internal combustion engine arranged along the curved shape of the collective portion exhaust pipe, the partition plate is provided with a reinforcing protrusion extending along a direction orthogonal to the flow, and the protrusion. The portion protrudes outside the curve of the partition plate.

上記突条部としては、仕切り板を部分的に膨出させたビードから構成することができ、あるいは、仕切り板の一方の面に固定された細長い別部材から構成することもできる。   The projecting portion can be formed from a bead in which a partition plate is partially bulged, or can be formed from a separate elongated member fixed to one surface of the partition plate.

このような突条部を設けることにより、仕切り板の剛性が向上し、振動が抑制される。特に、仕切り板の一次振動モードは、流れに垂直な振幅となりやすいので、流れに直交する方向に沿って突条部を設けることで、効果的に振動を抑制できる。そして、湾曲した集合部排気管を流れる排気流は、区画された各々の流路内で湾曲の外側に片寄るようにして流れるので、仕切り板の湾曲の外側に突出した突条部は、流れを妨げることがない。   By providing such a protrusion, the rigidity of the partition plate is improved and vibration is suppressed. In particular, since the primary vibration mode of the partition plate tends to have an amplitude perpendicular to the flow, the vibration can be effectively suppressed by providing the ridge portion along the direction orthogonal to the flow. And since the exhaust flow flowing through the curved collecting section exhaust pipe flows so as to be offset toward the outside of the curve in each of the partitioned flow paths, the protrusion protruding outside the curve of the partition plate flows. There is no hindrance.

仕切り板の下流側端部が自由端となっている構成では、この下流側端部が最も振動しやすいので、ここに突条部を設けることが望ましい。   In the configuration in which the downstream end portion of the partition plate is a free end, the downstream end portion is most likely to vibrate. Therefore, it is desirable to provide a protruding portion here.

上記突条部は、1つあるいは複数設けることができ、さらにこれに加えて、流れ方向に沿って延びた突条部をさらに備えていてもよい。この流れ方向に沿った突条部も、湾曲の外側に突出していることが望ましい。   One or a plurality of the protrusions may be provided, and in addition to this, a protrusion extending along the flow direction may be further provided. It is desirable that the protrusion along the flow direction also protrudes outside the curve.

また、突条部の形成に加えて、仕切り板の下流側端部の中央部を、拘束部材を介して集合部排気管に固定するようにしてもよい。これにより、仕切り板の振動がさらに効果的に抑制される。   Further, in addition to the formation of the ridge portion, the central portion of the downstream end portion of the partition plate may be fixed to the collecting portion exhaust pipe via a restraining member. Thereby, the vibration of a partition plate is suppressed more effectively.

この発明によれば、排気干渉回避のために設けられる仕切り板の振動を効果的に抑制でき、これに起因する異音発生を防止できる。そして、突条部の突出方向を湾曲の外側に向けることで、排気の流れに対する影響を最小限のものとすることができる。   According to the present invention, it is possible to effectively suppress the vibration of the partition plate provided for avoiding the exhaust interference, and it is possible to prevent the generation of abnormal noise resulting therefrom. And the influence with respect to the flow of exhaust_gas | exhaustion can be made into the minimum by directing the protrusion direction of a protrusion part to the outer side of a curve.

以下、この発明の一実施例を図面に基づいて詳細に説明する。   Hereinafter, an embodiment of the present invention will be described in detail with reference to the drawings.

図1,2は、この発明を直列4気筒内燃機関用の排気マニホルドとして構成した一実施例を示しており、図示せぬシリンダヘッドの側面に取り付けられるシリンダヘッド取付フランジ1に、金属管からなる各気筒毎の上流側排気管2の一端つまり上流端2aが接続されている。この4本の上流側排気管2は、各々の気筒の位置から気筒列の略中央部へ向かって延び、下流側端部2bが、互いに平行に、かつ正方形の頂点の位置にそれぞれ位置するように組み合わされて、1本の集合部排気管3の入口に接続されている。より詳しくは、図示していないが、個々の上流側排気管2の端部2bがそれぞれ四分円の断面形状をなし、全体として1つの円をなすように組み合わされた上で、集合部排気管3の上流側端部3aに挿入され、かつ溶接されている。   1 and 2 show an embodiment in which the present invention is configured as an exhaust manifold for an in-line four-cylinder internal combustion engine. A cylinder head mounting flange 1 mounted on a side surface of a cylinder head (not shown) is made of a metal pipe. One end of the upstream side exhaust pipe 2 for each cylinder, that is, the upstream end 2a is connected. The four upstream exhaust pipes 2 extend from the positions of the respective cylinders toward the substantially central portion of the cylinder row, and the downstream end portions 2b are positioned in parallel to each other and at the positions of the apexes of the square. Are connected to the inlet of one collecting section exhaust pipe 3. More specifically, although not shown, the end portions 2b of the individual upstream exhaust pipes 2 each have a quadrant cross-sectional shape, and are combined so as to form a single circle as a whole. The tube 3 is inserted into the upstream end 3a and welded.

ここで、図2に示すように、機関の前方もしくは後方から見たときに、上流側排気管2は、シリンダヘッド取付フランジ1から略水平方向へ延び、かつ下向きに略90°湾曲して、集合部排気管3に接続される。そして、♯2,♯3気筒の上流側排気管2が下側(換言すれば湾曲の内側)に、♯1,♯4気筒の上流側排気管2が上側(換言すれば湾曲の外側)に、重なるようにして、それぞれ配置されている。また、集合部排気管3は、4本の上流側排気管2が挿入される入口となる上流側端部3aが、略上方を向いて開口しており、かつ、ここから下流側に向かうに従って機関側方へと湾曲し、下流側端部3bは、側方へ向かって斜め下向きに開口している。つまり、機関の前方もしくは後方から見たときに、集合部排気管3は、上流側排気管2とは逆向きに湾曲し、排気系全体としては、図2のように略S字形に湾曲した形となっている。集合部排気管3の下流側端部3bには、図示せぬ触媒コンバータを取り付けるためのフランジ4が取り付けられている。詳しくは、このフランジ4は、集合部排気管3に連続する筒状部5を一体に有し、この筒状部5が集合部排気管3の下流側端部3b外周に嵌合するようにして溶接されている。   Here, as shown in FIG. 2, when viewed from the front or the rear of the engine, the upstream side exhaust pipe 2 extends from the cylinder head mounting flange 1 in a substantially horizontal direction and curves downward by approximately 90 °, Connected to the collecting portion exhaust pipe 3. The upstream exhaust pipe 2 of the # 2 and # 3 cylinders is on the lower side (in other words, the inside of the curve), and the upstream exhaust pipe 2 of the # 1 and # 4 cylinders is on the upper side (in other words, the outside of the curve). Are arranged so as to overlap each other. In addition, the collecting portion exhaust pipe 3 has an upstream end 3a serving as an inlet into which the four upstream exhaust pipes 2 are inserted, and is open substantially upward. It curves to the engine side, and the downstream end 3b opens obliquely downward toward the side. That is, when viewed from the front or the rear of the engine, the collecting portion exhaust pipe 3 is bent in the opposite direction to the upstream side exhaust pipe 2, and the exhaust system as a whole is bent in a substantially S shape as shown in FIG. It is in shape. A flange 4 for attaching a catalytic converter (not shown) is attached to the downstream end 3b of the collecting portion exhaust pipe 3. Specifically, the flange 4 has a cylindrical portion 5 that is continuous with the collecting portion exhaust pipe 3 so that the cylindrical portion 5 is fitted to the outer periphery of the downstream end 3b of the collecting portion exhaust pipe 3. Are welded.

なお、上記集合部排気管3のシリンダヘッド側の側面に、排気還流通路の一部となる排気還流管6の一端が接続されており、この排気還流管6の他端は、シリンダヘッド取付フランジ1に接続されている。また、集合部排気管3の機関前方側の側面には、図示せぬ空燃比センサが装着されるようになっている。   One end of an exhaust gas recirculation pipe 6 that is a part of the exhaust gas recirculation passage is connected to the side surface of the collecting section exhaust pipe 3 on the cylinder head side, and the other end of the exhaust gas recirculation pipe 6 is connected to a cylinder head mounting flange. 1 is connected. An air-fuel ratio sensor (not shown) is attached to the side surface of the collecting portion exhaust pipe 3 on the front side of the engine.

上記集合部排気管3の内部には、鋼板をプレス成形してなる仕切り板11が設けられている。この仕切り板11は、図2に示すように、集合部排気管3全体の湾曲に沿った湾曲形状をなし、集合部排気管3内部を、♯2,♯3気筒の排気が流れる第1流路12と、♯1,♯4気筒の排気が流れる第2流路13と、に区画している。この仕切り板11の上流側端部11aは、♯2,♯3気筒の上流側排気管2と♯1,♯4気筒の上流側排気管2との間に挟まれて、これらと一体に溶接されている。また、仕切り板11の下流側端部11bは、集合部排気管3の下流側端部3bつまり出口端に近い位置まで延びている。従って、4つの気筒の排気が、いわゆる「4−2−1」の形で集合することになり、点火順序が連続する気筒の排気干渉が回避される。   A partition plate 11 formed by press-forming a steel plate is provided inside the collective portion exhaust pipe 3. As shown in FIG. 2, the partition plate 11 has a curved shape along the curve of the collective portion exhaust pipe 3 as a whole, and the first flow in which the exhaust of the # 2 and # 3 cylinders flows inside the collective portion exhaust pipe 3. It is divided into a path 12 and a second flow path 13 through which exhausts of cylinders # 1 and # 4 flow. The upstream end 11a of the partition plate 11 is sandwiched between the upstream exhaust pipe 2 of the # 2 and # 3 cylinders and the upstream exhaust pipe 2 of the # 1 and # 4 cylinders, and is integrally welded thereto. Has been. Further, the downstream end 11b of the partition plate 11 extends to a position close to the downstream end 3b of the collecting portion exhaust pipe 3, that is, the outlet end. Accordingly, the exhausts of the four cylinders are gathered in the so-called “4-2-1” form, and exhaust interference of the cylinders whose ignition order is continuous is avoided.

ここで、上記仕切り板11の下流側端部11b近傍には、図3に示すように、補強用の突条部として、排気流に直交する方向に沿って延びた第1ビード15が形成されており、この第1ビード15の上流側に、さらに、排気の流れ方向に沿って延びた第2ビード16が形成されている。これらのビード15,16は、仕切り板11をプレス成形することにより部分的に膨出させたものであり、特に、湾曲の外側となる第1流路12側に突出して形成されている。なお、図3に示すように、この実施例では、仕切り板11の一方の側縁に、図示せぬ空燃比センサとの干渉を避けるための比較的大きな切欠部17が形成されており、上記第2ビード16は、この切欠部17によって残された部分の略中央に沿って形成されている。また、第1ビード15は、仕切り板11の下流側端部11bの幅の略全体に亘って形成されている。   Here, as shown in FIG. 3, a first bead 15 extending along a direction orthogonal to the exhaust flow is formed in the vicinity of the downstream end 11b of the partition plate 11 as a reinforcing protrusion. A second bead 16 extending along the exhaust flow direction is further formed on the upstream side of the first bead 15. These beads 15 and 16 are partially bulged by press-molding the partition plate 11, and are formed so as to particularly protrude toward the first flow path 12 that is outside the curve. As shown in FIG. 3, in this embodiment, a relatively large cutout portion 17 is formed on one side edge of the partition plate 11 to avoid interference with an air-fuel ratio sensor (not shown). The second bead 16 is formed along substantially the center of the portion left by the notch 17. The first bead 15 is formed over substantially the entire width of the downstream end portion 11 b of the partition plate 11.

上記のように仕切り板11にリブ状にビード15,16をプレス成形することにより、該仕切り板11の剛性が高くなり、振動が抑制される。特に、流れに垂直な方向の振幅となる仕切り板11の一次振動モードを、第1ビード15によって効果的に抑制でき、また流れに平行な方向の振幅となる仕切り板11の二次振動モードを、第2ビード16によって効果的に抑制できる。しかも、第1ビード15は、自由端となる仕切り板11の下流側端部11b近傍に位置するので、この下流側端部11bの振動が確実に抑制される。   By press-molding the beads 15 and 16 in a rib shape on the partition plate 11 as described above, the rigidity of the partition plate 11 is increased and vibration is suppressed. In particular, the primary vibration mode of the partition plate 11 having an amplitude in a direction perpendicular to the flow can be effectively suppressed by the first bead 15, and the secondary vibration mode of the partition plate 11 having an amplitude in a direction parallel to the flow can be set. The second bead 16 can be effectively suppressed. Moreover, since the first bead 15 is located in the vicinity of the downstream end 11b of the partition plate 11 serving as a free end, the vibration of the downstream end 11b is reliably suppressed.

ここで、上記のビード15,16、特に第1ビード15は、流れと直交する方向に沿っているので、排気流の流れを乱す虞があるが、上記実施例では、ビード15,16が第1流路12側に突出しているので、流れに対する影響が最小限となる。つまり、集合部排気管3内の第1流路12は、図2に示すように湾曲しているので、排気流は、湾曲の外側に片寄って流れようとし、仕切り板11の表面に沿って流れる排気流は相対的に少ない。従って、ビード15,16が突出していることによる影響が最小限となる。   Here, since the beads 15 and 16, especially the first bead 15, are along the direction orthogonal to the flow, there is a possibility that the flow of the exhaust flow may be disturbed. Since it protrudes to the one flow path 12 side, the influence on the flow is minimized. That is, since the first flow path 12 in the collective portion exhaust pipe 3 is curved as shown in FIG. 2, the exhaust flow tends to flow toward the outside of the curve, along the surface of the partition plate 11. There is relatively little exhaust flow. Therefore, the influence of the protruding beads 15 and 16 is minimized.

図4は、上記仕切り板11の下流側端部11bの振動をさらに確実に防止するために、仕切り板11と十字形に交差する形に帯状金属板からなる拘束部材18を設けた実施例を示している。上記拘束部材18は、該拘束部材18の中央と仕切り板11端部の中央とにそれぞれスリットを形成して、互いに十字に組み合わせた上で、溶接してあり、かつその両端が、集合部排気管3に連続する筒状部5に溶接固定されている。   FIG. 4 shows an embodiment in which a constraining member 18 made of a strip-shaped metal plate is provided so as to cross the partition plate 11 in a cross shape in order to further reliably prevent the vibration of the downstream end portion 11b of the partition plate 11. Show. The restraining member 18 is formed by forming slits at the center of the restraining member 18 and the center of the end portion of the partition plate 11 and combining them in a cross shape. It is welded and fixed to a cylindrical part 5 continuing to the tube 3.

このように拘束部材18を介して仕切り板11の下流側端部11bの中央部を集合部排気管3に固定するようにすれば、仕切り板11の振動がより確実に防止される。   In this way, if the central portion of the downstream end portion 11b of the partition plate 11 is fixed to the collecting portion exhaust pipe 3 via the restraining member 18, vibration of the partition plate 11 is more reliably prevented.

図5は、突条部として、上述したビードのプレス成形に代えて、板状もしくは棒状の補強部材19,20を仕切り板11の表面に溶接固定した実施例を示している。特に、これらの補強部材19,20は、湾曲した仕切り板11の湾曲の外側の面に取り付けられている。従って、前述した実施例と同様に、流れに対する影響が最小限となる。なお、この実施例では、2つの補強部材19,20が、いずれも流れに直交する方向に沿って設けられている。   FIG. 5 shows an embodiment in which plate-shaped or rod-shaped reinforcing members 19 and 20 are welded and fixed to the surface of the partition plate 11 instead of the above-described bead press molding as the protrusions. In particular, these reinforcing members 19 and 20 are attached to the curved outer surface of the curved partition plate 11. Therefore, as in the previous embodiment, the influence on the flow is minimized. In this embodiment, the two reinforcing members 19 and 20 are provided along the direction orthogonal to the flow.

この他、仕切り板11の下流側端部11bの端縁を折り返すことにより、補強用の突条部とすることもできる。   In addition, by reinforcing the end edge of the downstream end portion 11b of the partition plate 11, a reinforcing protrusion can be formed.

この発明に係る排気装置の一実施例として直列4気筒機関用の排気マニホルドを示す正面図。1 is a front view showing an exhaust manifold for an in-line four-cylinder engine as an embodiment of an exhaust device according to the present invention. 図1のA−A線に沿った断面図。Sectional drawing along the AA line of FIG. 図2の矢印B方向に沿った矢視図。The arrow line view along the arrow B direction of FIG. 拘束部材を設けた実施例の斜視図。The perspective view of the Example which provided the restraint member. 補強部材を溶接した実施例の要部の斜視図。The perspective view of the principal part of the Example which welded the reinforcement member.

符号の説明Explanation of symbols

2…上流側排気管
3…集合部排気管
11…仕切り板
12…第1流路
13…第2流路
15…第1ビード
16…第2ビード
18…拘束部材
19,20…補強部材
DESCRIPTION OF SYMBOLS 2 ... Upstream exhaust pipe 3 ... Collecting part exhaust pipe 11 ... Partition plate 12 ... 1st flow path 13 ... 2nd flow path 15 ... 1st bead 16 ... 2nd bead 18 ... Restraint member 19,20 ... Reinforcement member

Claims (4)

湾曲した集合部排気管の入口に複数の上流側排気管が接続されるとともに、この集合部排気管の内部に、排気干渉を回避するように流路を区画する仕切り板を、該集合部排気管の湾曲形状に沿って配置してなる内燃機関の排気装置において、上記仕切り板に、流れに直交する方向に沿って延びた補強用の突条部を備えるとともに、この突条部が、該仕切り板の湾曲の外側に突出しており、この突条部は、仕切り板の一方の面に固定された細長い別部材からなることを特徴とする内燃機関の排気装置。   A plurality of upstream exhaust pipes are connected to the inlet of the curved collecting section exhaust pipe, and a partition plate that divides the flow path so as to avoid exhaust interference is provided inside the collecting section exhaust pipe. In an exhaust system for an internal combustion engine arranged along a curved shape of a pipe, the partition plate is provided with a reinforcing ridge extending along a direction orthogonal to the flow, and the ridge is An exhaust system for an internal combustion engine, characterized in that it protrudes outside the curve of the partition plate, and the protruding portion is composed of a separate elongated member fixed to one surface of the partition plate. 湾曲した集合部排気管の入口に複数の上流側排気管が接続されるとともに、この集合部排気管の内部に、排気干渉を回避するように流路を区画する仕切り板を、該集合部排気管の湾曲形状に沿って配置してなる内燃機関の排気装置において、上記仕切り板に、流れに直交する方向に沿って延びた補強用の第1突条部を備えるとともに、流れ方向に沿って延びた第2突条部を備え、れら第1,第2突条部が、該仕切り板の湾曲の外側に突出しており、これら第1,第2突条部は、それぞれ仕切り板を部分的に膨出させたビードからなり、上記第1突条部は上記第2突条部よりも下流側に位置していることを特徴とする内燃機関の排気装置。 A plurality of upstream exhaust pipes are connected to the inlet of the curved collecting section exhaust pipe, and a partition plate that divides the flow path so as to avoid exhaust interference is provided inside the collecting section exhaust pipe. In an exhaust system for an internal combustion engine arranged along a curved shape of a pipe, the partition plate is provided with a reinforcing first protrusion extending along a direction orthogonal to the flow, and along the flow direction. a second ridge extending, first of these, the second protrusions may protrude to the outside of the curvature of the partition plate, the first of these, the second ridge portion, bead Tona was partially swelled the partition plate, respectively is, an exhaust system of an internal combustion engine the first ridge portion, characterized in that located downstream of said second protrusions. 湾曲した集合部排気管の入口に複数の上流側排気管が接続されるとともに、この集合部排気管の内部に、排気干渉を回避するように流路を区画する仕切り板を、該集合部排気管の湾曲形状に沿って配置してなる内燃機関の排気装置において、上記仕切り板に、流れに直交する方向に沿って延びた補強用の突条部を備えるとともに、この突条部が、該仕切り板の湾曲の外側に突出しており、かつ上記仕切り板の下流側端部の中央部を、拘束部材を介して集合部排気管に固定したことを特徴とする内燃機関の排気装置。   A plurality of upstream exhaust pipes are connected to the inlet of the curved collecting section exhaust pipe, and a partition plate that divides the flow path so as to avoid exhaust interference is provided inside the collecting section exhaust pipe. In an exhaust system for an internal combustion engine arranged along a curved shape of a pipe, the partition plate is provided with a reinforcing ridge extending along a direction orthogonal to the flow, and the ridge is An exhaust system for an internal combustion engine, characterized in that the central portion of the downstream end portion of the partition plate protrudes outside the curve of the partition plate and is fixed to the collecting portion exhaust pipe via a restraining member. 上記仕切り板は、上流側端部が上記上流側排気管とともに固定支持されているとともに、下流側端部が上記集合部排気管内で自由端となっており、この下流側端部近傍に上記突条部が設けられていることを特徴とする請求項1〜3のいずれかに記載の内燃機関の排気装置。   The upstream end of the partition plate is fixedly supported together with the upstream exhaust pipe, and the downstream end is a free end in the collective exhaust pipe. The exhaust device for an internal combustion engine according to any one of claims 1 to 3, wherein a strip is provided.
JP2005298254A 2005-10-13 2005-10-13 Exhaust device for internal combustion engine Expired - Fee Related JP4760287B2 (en)

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JP2005298254A JP4760287B2 (en) 2005-10-13 2005-10-13 Exhaust device for internal combustion engine
US11/580,255 US7503171B2 (en) 2005-10-13 2006-10-12 Exhaust system for an internal combustion engine
EP06255280A EP1775436B1 (en) 2005-10-13 2006-10-13 Exhaust system
CNB2006101405161A CN100467838C (en) 2005-10-13 2006-10-13 Exhaust system of internal-combustion engine
DE602006004669T DE602006004669D1 (en) 2005-10-13 2006-10-13 exhaust system

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CN100467838C (en) 2009-03-11
US20070084200A1 (en) 2007-04-19
JP2007107439A (en) 2007-04-26
DE602006004669D1 (en) 2009-02-26
US7503171B2 (en) 2009-03-17
EP1775436A1 (en) 2007-04-18
CN1948725A (en) 2007-04-18

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